EMD-14167

Helical reconstruction
3.0 Å
EMD-14167 Deposition: 19/01/2022
Map released: 29/06/2022
Last modified: 06/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-14167

Amyloid fibril from the antimicrobial peptide uperin 3.5

EMD-14167

Helical reconstruction
3.0 Å
EMD-14167 Deposition: 19/01/2022
Map released: 29/06/2022
Last modified: 06/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Uperoleia mjobergii
Sample: uperin 3.5
Fitted models: 7qv5 (Avg. Q-score: 0.595)
Raw data: EMPIAR-11278

Deposition Authors: Buecker R , Seuring C
The Cryo-EM structures of two amphibian antimicrobial cross-beta amyloid fibrils.
Bucker R, Seuring C , Cazey C, Veith K , Garcia-Alai M , Grunewald K , Landau M
(2022) Nat Commun , 13 , 4356 - 4356
PUBMED: 35896552
DOI: doi:10.1038/s41467-022-32039-z
ISSN: 2041-1723
Abstract:
The amyloid-antimicrobial link hypothesis is based on antimicrobial properties found in human amyloids involved in neurodegenerative and systemic diseases, along with amyloidal structural properties found in antimicrobial peptides (AMPs). Supporting this hypothesis, we here determined the fibril structure of two AMPs from amphibians, uperin 3.5 and aurein 3.3, by cryogenic electron microscopy (cryo-EM), revealing amyloid cross-β fibrils of mated β-sheets at atomic resolution. Uperin 3.5 formed a 3-blade symmetrical propeller of nine peptides per fibril layer including tight β-sheet interfaces. This cross-β cryo-EM structure complements the cross-α fibril conformation previously determined by crystallography, substantiating a secondary structure switch mechanism of uperin 3.5. The aurein 3.3 arrangement consisted of six peptides per fibril layer, all showing kinked β-sheets allowing a rounded compactness of the fibril. The kinked β-sheets are similar to LARKS (Low-complexity, Amyloid-like, Reversible, Kinked Segments) found in human functional amyloids.